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There was an optimum drying temperature for maximum adhesion strength after amine-treatment of PI surface.
The optimum drying temperature and the maximum adhesion strength increased with increasing the molecular weight of diamines or polyamines.
In multidirectional FRC substrate, the shear strength of the outer resin rich layer was limiting factor for the maximum adhesion strength.
Compared to the Dex-U systems, the maximum adhesion strength of the copolymeric system increased from 2.7 ± 0.1 MPa to 4.0 ± 0.6 MPa.
This was achieved without compromising the maximum adhesion strength, which was shown to be in the order of 97.2 Jm−2.
The formation of Cu3Sn and SnO2 played crucial role in controlling the Cu activity at the coating rubber interface to form optimally thick Cu-sulfide layer in Cu 5 wt.% Sn coating and thus provided the maximum adhesion strength.
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In pull-off tests, maximum adhesion strengths for coatings on aluminum and SS316L are approximately 25 MPa for electroless coatings and 10 MPa for electroplated coatings.
As a measure of dynamic strength, force-distance curves were recorded and the maximum adhesion force upon retraction of the cantilever was determined (Fig. 1D).
As a result, both the maximum adhesion force, Fad, and the total adhesion energy, Ead, significantly increased with td.
The maximum shear adhesion strength obtained in this paper was 14.15 MPa, with plasma-sprayed Al as bond coat, and the preheating temperature was 250 °C.
Using marble powder instead of chalk in the filler showed the potential for improvement The maximum measured adhesion strength (0.044 N/mm2, Figure 7) reached c. 54% of the strength of a commercial grout (0.082 N/mm2) and thus was comparably high and suitable for many demands (Figure 7).
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